Huang Wenchang, Li Jiaqi, Wu Shuai, He Yan, Li Xiangxin, Shen Zhitian, Cui Yaoyao
School of Biomedical Engineering (Suzhou), Division of Life Sciences and Medicine, University of Science and Technology of China, Suzhou 215163, China.
Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 215163, China.
Micromachines (Basel). 2024 Feb 29;15(3):344. doi: 10.3390/mi15030344.
Dual-frequency ultrasounds have demonstrated significant potential in augmenting thermal ablation efficiency for tumor treatment. Ensuring proper impedance matching between the dual-frequency transducer and the power amplifier system is imperative for equipment safety. This paper introduces a novel dual-frequency impedance matching network utilizing L-shaped topology and employing a genetic algorithm to compute component values. Implementation involved an adjustable capacitor and inductor network to achieve dual-frequency matching. Subsequently, the acoustic parameters of the dual-frequency HIFU transducer were evaluated before and after matching, and the effects of ultrasound thermal ablation with and without matching were compared. The proposed dual-frequency impedance matching system effectively reduced the standing wave ratio at the two resonance points while enhancing transmission efficiency. Thermal ablation experiments with matching circuits showed improved temperature rise efficiencies at both frequencies, resulting in an expanded ablation zone. The dual-frequency impedance matching method significantly enhances the transmission efficiency of the dual-frequency ultrasound system at two operational frequencies, thereby ensuring equipment safety. It holds promising prospects for application in dual-frequency ultrasound treatment.
双频超声在提高肿瘤热消融治疗效率方面已展现出巨大潜力。确保双频换能器与功率放大器系统之间的阻抗匹配得当对设备安全至关重要。本文介绍了一种采用L形拓扑结构并运用遗传算法计算元件值的新型双频阻抗匹配网络。其实现方式包括一个可调电容器和电感器网络以实现双频匹配。随后,对双频高强度聚焦超声(HIFU)换能器匹配前后的声学参数进行了评估,并比较了有无匹配情况下超声热消融的效果。所提出的双频阻抗匹配系统有效降低了两个共振点处的驻波比,同时提高了传输效率。带有匹配电路的热消融实验表明,两个频率下的升温效率均有所提高,从而扩大了消融区域。双频阻抗匹配方法显著提高了双频超声系统在两个工作频率下的传输效率,进而确保了设备安全。它在双频超声治疗中具有广阔的应用前景。